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STEM - Spinning Tops
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Description

Perfect for STEM Buddies, STEM Centers, Science Lessons, and Cross-Grade Activities!

Bring motion, physics, and creativity to life with this engaging STEM Spinning Top Project! This ready-to-use PowerPoint presentation guides students through the history, science, and cultural connections of spinning tops—followed by a hands-on engineering challenge where students design, test, and improve their own spinning top.

Whether you’re teaching Grade 1–6, running a STEM Buddies activity, or introducing forces and motion, this resource makes the lesson simple, interactive, and fun.

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Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

STEM - Spinning Tops

Little Pilots
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$1.50

Highlights

Grades icon
Grades
1st - 6th
Standards icon
Standards
Pages
13
Answer Key
Not Included

Description

Perfect for STEM Buddies, STEM Centers, Science Lessons, and Cross-Grade Activities!

Bring motion, physics, and creativity to life with this engaging STEM Spinning Top Project! This ready-to-use PowerPoint presentation guides students through the history, science, and cultural connections of spinning tops—followed by a hands-on engineering challenge where students design, test, and improve their own spinning top.

Whether you’re teaching Grade 1–6, running a STEM Buddies activity, or introducing forces and motion, this resource makes the lesson simple, interactive, and fun.

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

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Standards

to see state-specific standards (only available in the US).
NGSSMS-ESS3-2
Analyze and interpret data on natural hazards to forecast future catastrophic events and inform the development of technologies to mitigate their effects. Emphasis is on how some natural hazards, such as volcanic eruptions and severe weather, are preceded by phenomena that allow for reliable predictions, but others, such as earthquakes, occur suddenly and with no notice, and thus are not yet predictable. Examples of natural hazards can be taken from interior processes (such as earthquakes and volcanic eruptions), surface processes (such as mass wasting and tsunamis), or severe weather events (such as hurricanes, tornadoes, and floods). Examples of data can include the locations, magnitudes, and frequencies of the natural hazards. Examples of technologies can be global (such as satellite systems to monitor hurricanes or forest fires) or local (such as building basements in tornado-prone regions or reservoirs to mitigate droughts).
NGSSMS-ESS3-1
Construct a scientific explanation based on evidence for how the uneven distributions of Earth’s mineral, energy, and groundwater resources are the result of past and current geoscience processes. Emphasis is on how these resources are limited and typically non-renewable, and how their distributions are significantly changing as a result of removal by humans. Examples of uneven distributions of resources as a result of past processes include but are not limited to petroleum (locations of the burial of organic marine sediments and subsequent geologic traps), metal ores (locations of past volcanic and hydrothermal activity associated with subduction zones), and soil (locations of active weathering and/or deposition of rock).
NGSSMS-ESS3-5
Ask questions to clarify evidence of the factors that have caused the rise in global temperatures over the past century. Examples of factors include human activities (such as fossil fuel combustion, cement production, and agricultural activity) and natural processes (such as changes in incoming solar radiation or volcanic activity). Examples of evidence can include tables, graphs, and maps of global and regional temperatures, atmospheric levels of gases such as carbon dioxide and methane, and the rates of human activities. Emphasis is on the major role that human activities play in causing the rise in global temperatures.
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